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Relationship between fractal dimensions of stream and morphometric characteristics of basin for the soil conservation from water erosion

机译:水土流失水土保持与流域形态特征分形维数的关系

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摘要

The network of streams continuously changes its location based on time, environmental factors and human interventions. It is very important to study the stream changes in order to provide management solutions for soil conservation. One of the new methods in this regard is to use fractal geometry. The purpose of this study was to investigate the relationship between fractal and morphometric characteristics of the basin and the possibility of fast, low-cost and accurate management of the stream network based on this relationship. For this purpose, using data basic maps, drainage networks map and digital elevation model (10 m) of the ground by ArcGIS 10.7 was prepared. Then applying the rules of the Horton-Strahler river network, fractal dimensions were calculated to examine the relationship between fractal dimensions, and some rivers' geomorphic features were investigated. Finally, by entering the data obtained from the calculations in SPSS 22 and Curve Expert software, the morphometric characteristics of the basin associated with the fractal dimensions were investigated. In the Curve Expert software, the exponential, logarithmic, linear and power models of the dependent variable (fractal dimension) and the independent variable (morphometric characteristics) were investigated and the model that had the higher determination coefficient and was significant in SPSS 22 software for the nonlinear univariate regression was selected and introduced as the appropriate model for the relationship between the two studied variables. Results showed that the fractal dimension of stream branch, the fractal dimension of drainage density and the fractal dimension of total basin area were 1.84, 0.71 and 1.46, respectively. The results also showed that the fractal dimension of watersheds has meaningful relations with factors such as shape form, area, bifurcation ratio and length ratio in the watersheds. Due to the importance of stream characteristics in the management of watersheds in terms of flood, erosion and soil conservation, the fractal models can be used to make quick and accurate decisions about the stream management.
机译:溪流网络会根据时间、环境因素和人为干预不断改变其位置。研究河道变化对于为水土保持提供管理解决方案具有重要意义。这方面的新方法之一是使用分形几何。本研究旨在探究流域分形特征与形态特征之间的关系,以及基于这种关系对河流网络进行快速、低成本和准确管理的可能性。为此,利用数据基础图、排水管网图和ArcGIS 10.7的地面数字高程模型(10 m)编制了地图。然后,应用Horton-Strahler河网的规则,计算分形维数,研究分形维数之间的关系,并研究部分河流的地貌特征。最后,通过输入SPSS 22和Curve Expert软件计算得到的数据,研究了盆地与分形维数相关的形态特征。在Curve Expert软件中,研究了因变量(分形维数)和自变量(形态特征)的指数模型、对数模型、线性模型和幂模型,并选取了具有较高决定系数且在SPSS 22软件中具有显著性的非线性单变量回归模型,作为两个研究变量之间关系的合适模型。结果表明:河道支流分形维数、流域密度分形维数和流域总面积分形维数分别为1.84、0.71和1.46;研究结果还表明,流域分形维数与流域的形状、面积、分岔比和长度比等因素具有有意义的关系。由于河流特征在洪水、侵蚀和水土保持等流域管理中的重要性,分形模型可用于快速准确地做出有关河流管理的决策。

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